Tůmová Tereza, Monincová Lenka, Nešuta Ondřej, Čeřovský Václav, Kašička Václav
Institute of Organic Chemistry and Biochemistry of the Czech Academy of Sciences, Prague, Czech Republic.
Faculty of Food and Biochemical Technology, University of Chemistry and Technology Prague, Prague, Czech Republic.
Electrophoresis. 2017 Aug;38(16):2018-2024. doi: 10.1002/elps.201700092. Epub 2017 May 24.
Capillary ITP (CITP) and CZE were applied to the determination of effective charges and ionic mobilities of polycationic antimicrobial peptides (AMPs). Twelve AMPs (deca- to hexadecapeptides) containing three to seven basic amino acid residues (His, Lys, Arg) at variable positions of peptide chain were investigated. Effective charges of the AMPs were determined from the lengths of their ITP zones, ionic mobilities, and molar concentrations, and from the same parameters of the reference compounds. Lengths of the ITP zones of AMPs and reference compounds were obtained from their CITP analyses in cationic mode using leading electrolyte (LE) composed of 10 mM NH OH, 40 mM AcOH (acetic acid), pH 4.1, and terminating electrolyte (TE) containing 40 mM AcOH, pH 3.2. Ionic mobilities of AMPs and singly charged reference compounds (ammediol or arginine) were determined by their CZE analyses in the BGE of the same composition as the LE. The effective charges numbers of AMPs were found to be in the range 1.65-5.04, i.e. significantly reduced as compared to the theoretical charge numbers (2.86-6.99) calculated from the acidity constants of the analyzed AMPs. This reduction of effective charge due to tightly bound acetate counterions (counterion condensation) was in the range 17-47% depending on the number and type of the basic amino acid residues in the AMPs molecules. Ionic mobilities of AMPs achieved values (26.5-38.6) × 10 m V s and in most cases were in a good agreement with the ratio of their effective charges and relative molecular masses.
毛细管等速电泳(CITP)和毛细管区带电泳(CZE)被用于测定聚阳离子抗菌肽(AMP)的有效电荷和离子迁移率。研究了12种AMP(十肽至十六肽),它们在肽链的可变位置含有3至7个碱性氨基酸残基(His、Lys、Arg)。根据AMP的ITP区长度、离子迁移率和摩尔浓度以及参考化合物的相同参数来确定其有效电荷。AMP和参考化合物的ITP区长度通过阳离子模式下的CITP分析获得,使用由10 mM NH₄OH、40 mM AcOH(乙酸)、pH 4.1组成的前导电解质(LE)和含有40 mM AcOH、pH 3.2的终止电解质(TE)。AMP和单电荷参考化合物(2-甲基-2,4-戊二醇或精氨酸)的离子迁移率通过与LE组成相同的背景电解质(BGE)中的CZE分析来确定。发现AMP的有效电荷数在1.65 - 5.04范围内,即与根据所分析AMP的酸度常数计算出的理论电荷数(2.86 - 6.99)相比显著降低。由于紧密结合的醋酸根反离子(反离子凝聚)导致的有效电荷减少在17% - 47%范围内,这取决于AMP分子中碱性氨基酸残基的数量和类型。AMP的离子迁移率达到(26.5 - 38.6)×10⁻⁸ m² V⁻¹ s⁻¹,并且在大多数情况下与其有效电荷和相对分子质量的比值吻合良好。